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Noninvasive Sampling of Mucosal Lining Fluid for the Quantification of In Vivo Upper Airway Immune-mediator Levels
Published on: August 7, 2017
Specific fungal exposures, allergic sensitization, and rhinitis in infants
Melissa Osborne1, Tiina Reponen, Atin Adhikari
1Department of Environmental Health, University of Cincinnati, Cincinnati, OH, USA.
Abstract:
Indoor air quality has become increasingly important as we live in a society where the majority of our time is spent indoors. Specific attention has been drawn to airborne fungal spores as a factor affecting indoor air quality. This study targeted shortcomings of other studies by utilizing long-term air sampling and total fungal spore enumeration to determine associations between health outcomes and fungal spore concentrations. Infants (n = 144) were clinically evaluated and had skin prick tests (SPT) for 17 allergens. Airborne fungal spores were collected using a Button Personal Inhalable Sampler (SKC Inc.) for 48 h at a flow rate of 4 l/min. Sampling was conducted in the spring (March-May) or fall (August-October) in 2003-2004. Fungal spores were analyzed using microscopy-based total counting and identified to the genus/group level. Total spore and individual genus concentrations were analyzed for associations with rhinitis and positive SPT results. Overall, concentrations varied widely, between <2 and 2294 spores/m(3). While no relationship was observed between SPT(+) and total fungal counts, several significant associations were found when analysis was conducted on the various fungal genera and health outcomes. Positive associations were obtained between: Basidiospores and rhinitis (p < 0.01), Penicillium/Aspergillus and SPT(+) to any allergen (p < 0.01), and Alternaria and SPT(+) to any allergen (p < 0.01). Inverse associations were found between: Cladosporium and SPT(+) to any allergen (p < 0.05), and Cladosporium and SPT(+) to aeroallergens (p < 0.05). This study indicates that health outcome may vary by fungal genera; some fungal types may have sensitizing effects while others may have a beneficial role.
Insights
Indoor air quality is impacted by fungal spores. This study found specific fungal genera, like Basidiospores and Penicillium/Aspergillus, are linked to rhinitis and allergies in infants, while Cladosporium may have a protective effect.
Area of Science:
- Environmental Science
- Allergy and Immunology
- Public Health
Background:
- Indoor air quality is a growing concern due to increased time spent indoors.
- Airborne fungal spores are significant contributors to poor indoor air quality.
- Previous studies had limitations in long-term sampling and specific fungal enumeration.
Purpose of the Study:
- To investigate the association between specific airborne fungal genera and infant health outcomes.
- To determine if fungal spore concentrations correlate with rhinitis and positive skin prick test (SPT) results.
- To address limitations in prior research by using long-term air sampling and total spore counts.
Main Methods:
- Long-term air sampling (48 hours) using Button Personal Inhalable Samplers.
- Microscopy-based total counting and genus-level identification of fungal spores.
- Clinical evaluation and skin prick tests (SPT) for 17 allergens in 144 infants.
Main Results:
- No correlation found between total fungal counts and positive SPT results.
- Significant positive associations between Basidiospores and rhinitis (p < 0.01).
- Positive associations between Penicillium/Aspergillus and Alternaria with positive SPT results (p < 0.01).
- Inverse associations between Cladosporium and positive SPT results (p < 0.05).
Conclusions:
- Health outcomes related to indoor airborne fungi vary significantly by genus.
- Certain fungal genera (e.g., Penicillium/Aspergillus, Alternaria) may have sensitizing effects.
- Other fungal types (e.g., Cladosporium) might play a beneficial role in allergy development.
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